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Dynamic Modeling and Simulation of Hybrid Power Systems Based on Renewable Energy

机译:基于可再生能源的混合动力系统动态建模与仿真

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This paper describes dynamic modeling and simulation results of a renewable energy based hybrid power system. The paper focuses on the combination of solar cell (SC), wind turbine (WT), fuel cell (FC) and ultra-capacitor (UC) systems for power generation. As the wind turbine output power varies with the wind speed and the solar cell output power varies with both the ambient temperature and radiation, a FC system with an UC bank can be integrated to ensure that the system performs under all conditions. Excess wind and solar energies when available are converted to hydrogen using an electrolyzer for later use in the fuel cell. Dynamic modeling of various components of this isolated system is presented. Transient responses of the system to step changes in the load, ambient temperature, radiation, and wind speed in a number of possible situations are studied.
机译:本文介绍了基于可再生能源的混合动力系统的动态建模和仿真结果。本文着重于太阳能电池(SC),风力涡轮机(WT),燃料电池(FC)和超级电容器(UC)系统的组合来发电。由于风力涡轮机的输出功率随风速而变化,而太阳能电池的输出功率随环境温度和辐射而变化,因此可以集成具有UC库的FC系统,以确保该系统在所有条件下均能正常运行。如果有多余的风能和太阳能,则可通过电解器将其转化为氢气,以备将来用于燃料电池中。介绍了此隔离系统各个组件的动态建模。研究了在许多可能情况下系统对负载,环境温度,辐射和风速阶跃变化的瞬态响应。

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